Infante Ivan, Lelj Francesco
Faculty of Sciences, Section of Theoretical Chemistry, Vrije Universiteit Amsterdam, De Boelelaan 1083, 1081 HV, Amsterdam, The Netherlands, and LaMI, Dipartimento di Chimica and LaSCAMM, INSTM Sezione Basilicata, Università della Basilicata, Via N. Sauro 85, 85100 Potenza, Italy.
J Chem Theory Comput. 2007 May;3(3):838-51. doi: 10.1021/ct6003609.
The electronic structure of five complexes [M(oXHpz)] [M = Ni(2+); oXHpz(2)(-) = 2,3,7,8,12,13,17,18-octakis-substituted (X = CH2, NH, O, S, Se)-5,10,15,20-tetraazaporphyrinate dianion] has been investigated using a density functional approach. All the geometries have been obtained minimizing the total intramolecular energy using a nonlocal hybrid functional (B3LYP) at the 6-31g* level. The electronic configuration of Ni(2+) is (dx(2)-y(2))(0)(dxy)(2)(dxz,dyz)(4)(dz(2))(2). Optimized geometries exhibit a planar conformation and are all above the threshold for ruffling, which is described by a Ni-Np bond distance of 1.85-1.87 Å for sterically unhindered porphyrazines. Indeed, the smallest bond distance is 1.880 Å for Ni(oOHpz). Peripheral substituents yield modifications to the "core" of the macrocycle and to the energy levels, changing σ and π interactions. Furthermore, within a time-dependent density functional theory approach, excited states of Ni(oXHpz) [X = CH2, NH, O, S, Se,] complexes have been studied and compared with available experimental UV-vis spectra.
采用密度泛函方法研究了五种配合物[M(oXHpz)] [M = Ni(2+);oXHpz(2)(-) = 2,3,7,8,12,13,17,18 - 八取代(X = CH2、NH、O、S、Se)- 5,10,15,20 - 四氮杂卟啉二价阴离子]的电子结构。所有几何结构均通过在6 - 31g*水平使用非局域杂化泛函(B3LYP)使分子内总能量最小化而获得。Ni(2+)的电子构型为(dx(2)-y(2))(0)(dxy)(2)(dxz,dyz)(4)(dz(2))(2)。优化后的几何结构呈现平面构象,且均高于由空间位阻较小的卟吩嗪的Ni - Np键长1.85 - 1.87 Å所描述的起皱阈值。实际上,Ni(oOHpz)的最小键长为1.880 Å。外围取代基会对大环的“核心”和能级产生修饰,改变σ和π相互作用。此外,在含时密度泛函理论方法中,研究了Ni(oXHpz) [X = CH2、NH、O、S、Se]配合物的激发态,并与现有的实验紫外 - 可见光谱进行了比较。